Pages that link to "Item:Q4221126"
From MaRDI portal
The following pages link to Analysis of a correlation-based model for the development of orientation-selective receptive fields in the visual cortex (Q4221126):
Displaying 17 items.
- Generalized SPIN models for coupled cortical feature maps obtained by coarse graining correlation based synaptic learning rules (Q694705) (← links)
- Spontaneous symmetry-breaking energy functions and the emergence of orientation selective cortical cells (Q1099800) (← links)
- Quadrature and the development of orientation selective cortical cells by Hebb rules (Q1120492) (← links)
- Development of spatiotemporal receptive fields of simple cells. I: Model formulation (Q1384492) (← links)
- Development of spatiotemporal receptive fields of simple cells: II: Simulation and analysis (Q1384493) (← links)
- The effect of intracortical competition on the formation of topographic maps in models of Hebbian learning (Q1585080) (← links)
- Formation of an orientation preference map -- gradual inhibition method (Q1606540) (← links)
- Emergence of orientation selective simple cells simulated in deterministic and stochastic neural networks (Q1803740) (← links)
- Development of joint ocular dominance and orientation selectivity maps in a correlation-based neural network model (Q1851725) (← links)
- A computational model for the development of simple-cell receptive fields spanning the regimes before and after eye-opening (Q1860271) (← links)
- Recurrent inhibition and clustered connectivity as a basis for Gabor-like receptive fields in the visual cortex (Q1910219) (← links)
- Organization of receptive fields in networks with Hebbian learning: The connection between synaptic and phenomenological models (Q1914990) (← links)
- Spontaneous symmetry breaking in self-organizing neural fields (Q2373151) (← links)
- Hebbian crosstalk and input segregation (Q2632190) (← links)
- Analysing visual receptive fields through generalised additive models with interactions (invited article with discussion: María L. Durbán and Thomas Kneib) (Q2920783) (← links)
- Constraint on the Number of Synaptic Inputs to a Visual Cortical Neuron Controls Receptive Field Formation (Q3182484) (← links)
- Impact of axonal delay on structure development in a multi-layered network (Q6055153) (← links)